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High-Performance 45° Slant-Polarized Omnidirectional Antenna for 2–66-GHz UWB Applications

机译:适用于2–66 GHz UWB应用的高性能45°斜极化全向天线

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摘要

The development of a 2–66-GHz ultra-wideband 45° slant-polarized omnidirectional antenna (SPOA) is described. The antenna is radome enclosed and consists of a wideband biconical antenna that provides omnidirectional radiation patterns with vertical polarization and a multiscreen polarizer that converts vertical polarization into 45° slant-polarization. To achieve high-performance radiation characteristics, the geometrical dimensions of the multiscreen polarizer are optimized. Invasive weed optimization algorithm is used as an optimizer tool. In the optimization procedure, the antenna impedance bandwidth, pattern ripple in the azimuth plane, and copolarized gain/cross-polarized gain ratio are optimization goals. A prototype of the 45° SPOA is fabricated and measured. The measured voltage standing wave ratio (VSWR) of the antenna is less than 2.15. Moreover, experimental results show that pattern ripple in the azimuth plane is lower than , and copolarized gain/cross-polarized gain ratio is higher than 26 dB, over 2–40-GHz frequency band. The efficiency of the fabricated antenna both in bandwidth and optimality of the results is compared with a number of commercially available wideband 45° SPOAs. Comparison results show that the designed antenna outperforms other 45° SPOAs.
机译:描述了2–66 GHz超宽带45°倾斜极化全向天线(SPOA)的开发。该天线被天线罩封闭,由宽带双圆锥形天线和多屏偏振器组成,宽带双圆锥形天线提供具有垂直极化的全向辐射方向图,该多屏极化器将垂直极化转换为45°倾斜极化。为了获得高性能的辐射特性,优化了多屏偏振器的几何尺寸。侵入性杂草优化算法用作优化工具。在优化程序中,天线阻抗带宽,方位平面中的图案纹波以及同极化增益/交叉极化增益比是优化目标。制作并测量了45°SPOA的原型。天线的测得电压驻波比(VSWR)小于2.15。此外,实验结果表明,在2–40 GHz频段上,方位平面上的模式纹波低于,并且同极化增益/交叉极化增益比高于26 dB。将制造的天线在带宽和结果的最优性方面的效率与许多商用宽带45°SPOA进行了比较。比较结果表明,设计的天线性能优于其他45°SPOA。

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